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◆ Journal of Cosmology and Astroparticle Physics2026-05-01· Physics

5D rotating black holes as dark matter in dark dimension scenario: Hawking radiation versus the memory burden effect

G.K. Leontaris, George Prampromis

原始摘要(英文原文)· Original abstract
Abstract This work explores the possibility that five-dimensional primordial rotating black holes could account for all, or a significant portion, of the dark matter in our universe. Our analysis is performed within the context of the “dark dimension” scenario, a theoretical consequence of the Swampland Program C. Vafa, The String landscape and the swampland , hep-th/0509212 that predicts a single micron-scale extra dimension to explain the observed value of dark energy. We demonstrate that within this scenario, the mass loss of a primordial rotating black hole sensitive to the fifth dimension is significantly slower than that of its four-dimensional counterpart. Consequently, primordial black holes with an initial mass of M ≳ 10 10 g can survive to the present day and potentially constitute the dominant form of dark matter. Finally, we investigate the memory burden effect and find that it dramatically prolongs the lifetime of five-dimensional rotating primordial black holes, making them compelling candidates for all the dark matter in the universe.
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